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High-flux two-dimensional magneto-optical-trap source for cold lithium atoms

机译:用于冷锂原子的高通量二维磁光阱源

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摘要

We demonstrate a two-dimensional magneto-optical trap (2D MOT) as a beam source for cold Li-6 atoms. The source is side loaded from an oven operated at temperatures in the range 600 less than or similar to T less than or similar to 700 K. The performance is analyzed by loading the atoms into a three-dimensional MOT located 220 mm downstream from the source. The maximum recapture rate of similar to 10(9) s(-1) is obtained for T approximate to 700 K and results in a total of up to 10(10) trapped atoms. The recaptured fraction is estimated to be 30 +/- 10% and limited by beam divergence. The most-probable velocity in the beam (alpha(z)) is varied from 18 to 70 m/s by increasing the intensity of a push beam. The source is quite monochromatic with a full width at half maximum velocity spread of 11 m/s at alpha(z) = 36 m/s, demonstrating that side loading completely eliminates beam contamination by hot vapor from the oven. We identify depletion of the low-velocity tail of the oven flux as the limiting loss mechanism. Our approach is suitable for other atomic species.
机译:我们演示了二维磁光阱(2D MOT)作为冷Li-6原子的束源。光源是从烤箱中侧面加载的,该烤箱的温度范围是600小于或等于T小于或等于700K。通过将原子加载到位于源下游220毫米的三维MOT中来分析性能。对于大约700 K的T,获得了类似于10(9)s(-1)的最大捕获率,并且总共捕获了多达10(10)个原子。重新捕获的分数估计为30 +/- 10%,并受到光束发散的限制。通过增加推力光束的强度,光束中最可能的速度(alpha(z))从18到70 m / s变化。该光源是非常单色的,在alpha(z)= 36 m / s时,其最大速度扩展的一半为11 m / s的全宽度,这表明侧面载荷完全消除了来自烤箱的热蒸汽对光束的污染。我们将烤箱焊剂低速尾部的损耗确定为极限损耗机制。我们的方法适用于其他原子种类。

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